Nanos Technologies, LLC Columbia, MO 65203, USA.
Biosens Bioelectron. 2013 Mar 15;41:409-16. doi: 10.1016/j.bios.2012.08.063. Epub 2012 Sep 19.
We report a simple, robust fluorescence biosensor for the ultra-sensitive detection of Clostridium botulinum Neurotoxin Type A (BoNT/A) in complex, real-world media. High intrinsic signal amplification was achieved through the combined use of ultra-bright, photostable dye-doped nanoparticle (DOSNP) tags and high surface area nanoporous organosilicate (NPO) thin films. DOSNP with 22 nm diameter were synthesized with more than 200 times equivalent free dye fluorescence and conjugated to antibodies with average degree of substitution of 90 dyes per antibody, representing an order of magnitude increase compared with conventional dye-labeled antibodies. The NPO films were engineered to form constructive interference at the surface where fluorophores were located. In addition, DOSNP-labeled antibodies with NPO films increased surface roughness causing diffuse scattering resulting in 24% more scattering intensity than dye-labeled antibody with NPO films. These substrates were used for immobilization of capture antibodies against BoNT/A, which was further quantified by DOSNP-labeled signal antibodies. The combination of optical effects enhanced the fluorescence and, therefore, the signal-to-noise ratio significantly. BoNT/A was detected in PBS buffer down to 21.3 fg mL(-1) in 4 h. The assay was then extended to several complex media and the four-hour detection limit was found to be 145.8 fg mL(-1) in orange juice and 164.2 fg mL(-1) in tap water, respectively, demonstrating at least two orders of magnitude improvement comparing to the reported detection limit of other enzyme-linked immunosorbent assays (ELISA). This assay, therefore, demonstrates a novel method for rapid, ultra-low level detection of not only BoNT/A, but other analytes as well.
我们报告了一种简单、稳健的荧光生物传感器,用于在复杂的实际环境中超灵敏地检测肉毒梭菌神经毒素 A 型(BoNT/A)。通过超亮、光稳定的染料掺杂纳米粒子(DOSNP)标记物和高表面积纳米多孔有机硅(NPO)薄膜的联合使用,实现了高固有信号放大。直径为 22nm 的 DOSNP 合成物具有超过 200 倍的等效游离染料荧光,并与抗体偶联,每个抗体的平均取代度为 90 个染料,与传统的染料标记抗体相比,提高了一个数量级。NPO 薄膜被设计成在荧光团所在的表面形成相长干涉。此外,DOSNP 标记的抗体与 NPO 薄膜一起增加了表面粗糙度,导致漫散射,从而使散射强度比具有 NPO 薄膜的染料标记抗体增加了 24%。这些基底用于固定针对 BoNT/A 的捕获抗体,然后通过 DOSNP 标记的信号抗体进行进一步定量。光学效应的结合显著增强了荧光,从而提高了信号与噪声的比值。在 PBS 缓冲液中,BoNT/A 可在 4 小时内检测到低至 21.3fg/mL。然后将该测定法扩展到几种复杂的介质中,发现 4 小时的检测限分别为橙汁中的 145.8fg/mL 和自来水中的 164.2fg/mL,与其他酶联免疫吸附测定(ELISA)报道的检测限相比,提高了至少两个数量级。因此,该测定法展示了一种快速、超低水平检测 BoNT/A 以及其他分析物的新方法。